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Spontaneous mutation in Mitf gene causes osteopetrosis in silver homozygote quail
1Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, 2-3-10, Kandasurugadai, Chiyodaku, Tokyo, Japan.
Abstract:
Silver homozygous quail was recently reported to have mutations in Mitf gene. Although numerous mutations in Mitf gene have been reported in mice, no mutations corresponding to the mutation in the homozygous silver (B/B) quail in Mitf gene have been reported to cause defects in pigmentation and bone. Therefore, we investigated the bones of the B/B homozygotes. Comparison of the bones of the B/B homozygotes with those of wild-type by X-ray examination revealed osteopetrosis in the long bones of B/B homozygotes. However, osteopetrosis in B/B homozygotes was less severe than that observed in mi/mi mice. Histological examination showed that there were less TRAP-positive multinucleated cells in the trabecular bones in B/B homozygote tibia than in the wild type. In vitro osteoclastogenesis study also suggested that formation of TRAP-positive multinucleated cell was suppressed in the marrow cells of the long bones of the B/B homozygotes. Furthermore, overexpression of chicken Mitf via retroviral transfection into B/B homozygote bone marrow cells in cultures increased the number of TRAP-positive cells 2-3 fold more than that in control. These results indicated that in addition to the previously reported defect in melanogenesis, osteoclastogenesis was inhibited in B/B homozygotes. These results indicate that the novel mutations in Mitf gene observed in the B/B homozygote quail impair osteoclastic bone resorption.
Insights
Silver quail with Mitf gene mutations exhibit osteopetrosis and impaired osteoclast formation. These findings reveal a novel role for Mitf in bone development and resorption.
Area of Science:
- Genetics
- Developmental Biology
- Bone Biology
Background:
- The Mitf gene is crucial for melanogenesis and has been linked to bone defects in mice.
- Silver homozygous quail (B/B) possess Mitf gene mutations, but their skeletal effects are uncharacterized.
Purpose of the Study:
- To investigate the skeletal phenotypes of B/B quail.
- To determine the impact of Mitf mutations on osteoclastogenesis and bone resorption in quail.
Main Methods:
- X-ray examination of B/B quail bones compared to wild-type.
- Histological analysis of trabecular bone and TRAP-positive cells.
- In vitro osteoclastogenesis assays using bone marrow cells.
- Retroviral transfection to overexpress Mitf in B/B quail cells.
Main Results:
- B/B quail exhibited osteopetrosis, characterized by thickened long bones, though less severe than in mice.
- Reduced numbers of TRAP-positive multinucleated cells were observed in B/B quail bone marrow.
- In vitro studies confirmed suppressed osteoclast formation in B/B quail.
- Mitf overexpression rescued the osteoclast deficiency in B/B quail cells.
Conclusions:
- Mitf mutations in B/B quail lead to impaired osteoclastogenesis and osteoclastic bone resorption, in addition to pigmentation defects.
- This study identifies a novel function of Mitf in regulating osteoclast activity and bone remodeling in quail.